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Tissue Expansion Imaging for Tissue Coagulation Mapping during High Intensity Focused Ultrasound Therapy

机译:高强度聚焦超声治疗期间组织凝固映射组织膨胀成像

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Therapy monitoring based on echo-time-shift imaging during high intensity focused ultrasound (HIFU) treatment was described. The echo shift estimated by radio frequency (RF) correlation between adjacent frames is potentially useful for mapping coagulation and tissue temperature. B-mode images are also useful for real-time monitoring, but cannot show the denatured region formed below the boiling point. Echo-shift images are, however, can. They are affected by temperature-dependant changes in the speed of sound, by thermal expansion of tissues, and by tissue expansion caused by irreversibly denatured protein and the radiation force generated by HIFU. To separate the effect of radiation force from other thermal changes, we used a split-focus technique with which the peak of ultrasonic intensity can be shifted from the peak tissue temperature. Tissue expansion was mapped with a split HIFU beam with large separation in an in vitro experiment. Since the time course of tissue expansion did not follow that of the temperature change and expansion remained after cooling, it was suggested that echo-shift imaging could detect region in which coagulation occurred below the boiling temperature, which regions are could not be detected by B-mode imaging.
机译:描述了基于高强度聚焦超声(HIFU)处理期间的回波时移成像的治疗监测。相邻帧之间的射频(RF)相关性估计的回声偏移可能用于映射凝固和组织温度。 B模式图像对于实时监测也是有用的,但不能显示形成在沸点下方的变性区域。然而,回声移位图像可以。它们受到声音速度的温度依赖性变化,通过组织的热膨胀,以及由不可逆的蛋白质和HIFU产生的辐射力引起的组织膨胀。为了将辐射力与其他热变化分开,我们使用了一种分焦技术,其中超声波强度的峰值可以从峰组织温度移位。用分裂的HIFU梁映射组织膨胀,在体外实验中具有大分离。由于组织膨胀的时间过程未遵循冷却后温度变化和膨胀的膨胀,因此建议回声移位成像可以检测到凝固低于沸腾温度的区域,该区域不能通过B -Mode成像。

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